<div><p>Droplet-based microfluidics has been used to facilitate high-throughput analysis of individual prokaryote and mammalian cells. However, there is a scarcity of similar workflows applicable to rapid phenotyping of plant systems where phenotyping analyses typically are time-consuming and low-throughput. We report on-chip encapsulation and analysis of protoplasts isolated from the emergent plant model <i>Marchantia polymorpha</i> at processing rates of >100,000 cells per hour. We use our microfluidic system to quantify the stochastic properties of a heat-inducible promoter across a population of transgenic protoplasts to demonstrate its potential for assessing gene expression activity in response to environmental conditions. We further ...
Item does not contain fulltextMiniaturization has been the key driver for many remarkable technologi...
Stochastic variations within seemingly homogeneous cell populations determine the emergent propertie...
Phenotypic diversity is a common feature shared between all cell populations, ranging from microbial...
Droplet-based microfluidics has been used to facilitate high-throughput analysis of individual proka...
Cell factories are cells that have been engineered to produce a compound of interest, ranging from b...
Multicellular organisms, from roundworms to humans, are composed of interacting individual cells tha...
Multicellular organisms, from roundworms to humans, are composed of interacting individual cells tha...
Single-cell analysis techniques have emerged to overcome the limitation of bulk analysis in which th...
Background: Plant protoplasts are basic plant cells units in which the pecto-cellulosic cell wall ha...
A better understanding of the phenotypic heterogeneity of protoplasts requires a comprehensive analy...
The application of microfluidic technologies to microalgal research is particularly appealing since ...
Protoplasts are a prominent cell type for conducting gene transfection in the agricultural space in ...
This article reviews recent developments in droplet microfluidics enabling high-throughput single-ce...
Dynamic follow up and analysis of isolated single cells that display non-adhering behaviour is hinde...
Droplet microfluidics is an emerging technology for analysis of single cells and biomolecules at hig...
Item does not contain fulltextMiniaturization has been the key driver for many remarkable technologi...
Stochastic variations within seemingly homogeneous cell populations determine the emergent propertie...
Phenotypic diversity is a common feature shared between all cell populations, ranging from microbial...
Droplet-based microfluidics has been used to facilitate high-throughput analysis of individual proka...
Cell factories are cells that have been engineered to produce a compound of interest, ranging from b...
Multicellular organisms, from roundworms to humans, are composed of interacting individual cells tha...
Multicellular organisms, from roundworms to humans, are composed of interacting individual cells tha...
Single-cell analysis techniques have emerged to overcome the limitation of bulk analysis in which th...
Background: Plant protoplasts are basic plant cells units in which the pecto-cellulosic cell wall ha...
A better understanding of the phenotypic heterogeneity of protoplasts requires a comprehensive analy...
The application of microfluidic technologies to microalgal research is particularly appealing since ...
Protoplasts are a prominent cell type for conducting gene transfection in the agricultural space in ...
This article reviews recent developments in droplet microfluidics enabling high-throughput single-ce...
Dynamic follow up and analysis of isolated single cells that display non-adhering behaviour is hinde...
Droplet microfluidics is an emerging technology for analysis of single cells and biomolecules at hig...
Item does not contain fulltextMiniaturization has been the key driver for many remarkable technologi...
Stochastic variations within seemingly homogeneous cell populations determine the emergent propertie...
Phenotypic diversity is a common feature shared between all cell populations, ranging from microbial...